EP1500937A1

Analyzing article, analyzer and method of analyzing a sample using the analyzing article

Abstract

The present invention relates to a technique for moving a mobile component such as a sample and a reagent, in an analyzing article. A method of analyzing a sample according to the present invention includes a first movement step of moving a mobile component from a fluid entrance port (61) to a first goal (511) in a passage (51), and a second movement step of moving the mobile component from the first goal (511) to a second goal (512) in the passage (51), in an analyzing article (Y1). The analyzing article (Y1) further includes a branch passage which branches from the first goal (511), and a first opening for releasing gas from within the branch passage. The first movement step is carried out by establishing communication between inside and outside of the branch passage via the first opening. The second movement step is carried out by providing a second opening downstream from the second goal (512) with respect to a flow direction of the mobile component, thereby establishing communication between inside and outside of the passage.

EP1500937A1, drawing sheet 1
Sheet 1 of 40

Term

Term ended

Projected expiry passed 28 April 2023, 3.4 years ago.

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40 claims: 7 independent, 33 dependent

  1. 1
    A method of analyzing a sample using an analyzing article including at least one passage for moving a mobile component introduced from a fluid entrance port, the method comprising:a first movement step of moving the mobile component from the fluid entrance port to a first goal in the passage;and a second movement step of moving the mobile component from the first goal to a second goal in the passage,    wherein    the analyzing article further includes a branch passage branching from the first goal, and a first opening for releasing gas from within the branch passage,    the first movement step being performed by establishing communication between inside and outside of the branch passage via the first opening,    the second movement step being performed by providing a second opening downstream from the second goal with respect to a flow direction of the mobile component for establishing communication between inside and outside of the passage.
  2. 2
    The method according to Claim 1, wherein the analyzing article includes at least one gas releasing port communicating with the passage and closed by a closer before beginning of the second movement step,    the second movement step being performed by providing the second opening in the closer thereby opening the gas releasing port.
  3. 3
    The method according to Claim 2, wherein the analyzing article includes a plurality of passages,    the second movement step being performed simultaneously for the passages.
  4. 4
    The method according to Claim 1, wherein the analyzing article includes a plurality of passages,    the first movement step being performed simultaneously for the passages.
  5. 5
    The method according to Claim 1, wherein the analyzing article is a micro device for analysis of a micro sample.
  6. 6
    An analyzing article comprising a fluid entrance port, and at least one passage for moving a mobile component introduced from the fluid entrance port, wherein    the analyzing article further comprises a branch passage branched from a branching region in the passage,    the branch passage communicating with outside at a location other than the fluid entrance port for preventing the mobile component from moving in the passage at the branching region, the passage communicating with outside at a location other than the fluid entrance port for allowing the mobile component to move in the passage beyond the branching region.
  7. 7
    The analyzing article according to Claim 6, wherein the passage communicates with a gas releasing port for releasing gas from within the passage, the gas releasing port being opened for allowing the mobile component to move beyond the branching region.
  8. 8
    The analyzing article according to Claim 7, wherein the gas releasing port is closed by a closer.
  9. 9
    The analyzing article according to Claim 6, wherein the passage includes at least one reagent region containing a reagent for reaction with a sample.
  10. 10
    The analyzing article according to Claim 9, wherein the reagent region is located downstream from the branching region in the passage with respect to a flow direction of the mobile component,    a distance between the reagent region and the branching region being smaller than a distance between the branching region and the fluid entrance port.
  11. 11
    The analyzing article according to Claim 6 comprising a plurality of passages, wherein    two or more of the passages each include a reagent region containing a reagent for reaction with a sample, the reagents contained in the reagent regions in the two or more passages being different from each other,    the analyzing article allowing measurements on a plurality of target components in a single sample.
  12. 12
    An analyzing article comprising a fluid entrance port and a plurality of passages for moving a mobile component introduced from the fluid entrance port, wherein    the analyzing article further comprises a common passage communicating with the passages, and    at least one gas releasing port communicating with the common passage for releasing gas from within the passages via the common passage.
  13. 13
    The analyzing article according to Claim 12, wherein the fluid entrance port is located at a center region,    the passages allowing the mobile component introduced from the fluid entrance port to move from the center region toward a peripheral region.
  14. 14
    The analyzing article according to Claim 13, wherein the passages run radially.
  15. 15
    The analyzing article according to Claim 12, further comprising a plurality of analysis regions for analysis of a specific component in a sample fluid, each passage including at least one of the analysis regions,    movement of the mobile component introduced from the fluid entrance port being stopped upstream from the analysis region before being allowed into the analysis region.
  16. 16
    The analyzing article according to Claim 15, wherein the gas releasing port is closed before the mobile component is introduced from the fluid entrance port,    the gas releasing port being opened for introduction of the mobile component into the analysis region.
  17. 17
    The analyzing article according to Claim 15, wherein said at least one gas releasing port is opened for preventing the mobile component from entering the analysis regions.
  18. 18
    The analyzing article according to Claim 15, further comprising at least one additional gas releasing port and a plurality of branch passages, each of the branch passages communicating with said at least one additional gas releasing port and with a corresponding one of the passages before the analysis region,    said at least one additional gas releasing port being opened for stopping the movement of mobile component before each of the analysis regions.
  19. 19
    The analyzing article according to Claim 12, wherein two or more of the passages each include a reagent region containing a reagent for reaction with a sample, the reagents contained in the reagent regions in the two or more passages being different from each other,    the analyzing article allowing measurements on a plurality of target components in a single sample.
  20. 20
    The analyzing article according to Claim 12, provided by a micro device for analysis of a micro sample.
  21. 21
    The analyzing article according to Claim 20, wherein each passage includes a main cross section having a width of 10-500 µm and a depth of 5-500 µm, the cross section being rectangular, satisfying the inequality:depth/width≧0.5.
  22. 22
    An analyzing article comprising:a fluid entrance port;a first common passage communicating with the fluid entrance port;a plurality of individual passages branched from the first common passage;a second common passage communicating with the individual passages;and a gas releasing port communicating with the second common passage for releasing gas from within the individual passages via the second common passage,    wherein the gas releasing port is closed for allowing a mobile component into the first common passage, and then opened for supplying the individual passages with the mobile component simultaneously.
  23. 23
    An analyzer for analysis of a sample using an analyzing article including at least one passage for moving a mobile component introduced from a fluid entrance port,    the analyzing article preventing the mobile component from moving beyond a first goal in the passage while allowing the mobile component to move beyond the first goal to a second goal in the passage by opening the passage at a location other than the fluid entrance port,    wherein the analyzer further comprises an opener for opening the passage at a location other than the fluid entrance port.
  24. 24
    The analyzer according to Claim 23, wherein the analyzing article allows communication between inside of the passage and outside, and includes a gas releasing port closed by a closer,    the opener opening the gas releasing port by forming an opening in the closer.
  25. 25
    The analyzer according to Claim 24, wherein the closer is provided by a sheet member,    the opener including a cutter for cutting the sheet member.
  26. 26
    The analyzer according to Claim 24, wherein the closer is provided by a plug member inserted into the gas releasing port,    the opener including a puller for pulling out the plug member.
  27. 27
    The analyzer according to Claim 23, wherein the opener applies energy to the analyzing article without contacting the analyzing article for melting or deforming at least part of the analyzing article.
  28. 28
    An analyzer for analysis of a sample using an analyzing article including at least one passage for moving a mobile component introduced from a fluid entrance port, comprising a mount for attaching the analyzing article,    wherein the analyzing article further includes a branch passage branched from a branching region in the passage, and a gas releasing port for releasing gas from within the passage, the branch passage communicating with outside at a location other than the fluid entrance port for preventing the mobile component from moving in the passage at the branching region, the passage communicating with outside at a location other than the fluid entrance port for allowing the mobile component to move in the passage beyond the branching region,    wherein the analyzer further comprises an opener and closer for selection of an open state and a closed state of the gas releasing port.
  29. 29
    The analyzer according to Claim 28, wherein the opener and closer includes a movable closing element,    the selection of the open state and the closed state being made by moving the closing element.
  30. 30
    A method of forming an opening in an analyzing article including a passage for moving a sample, for establishing communication between inside and outside of the passage, the method comprising irradiating a target region in the analyzing article with light and allowing the target region to absorb optical energy.
  31. 31
    The method according to Claim 30, wherein the analyzing article includes a communicating hole for communicating the inside of the passage with the outside, and a blocker blocking the communicating hole and including the target region.
  32. 32
    The method according to Claim 31, wherein the communicating hole serves as a gas releasing port for releasing gas from within the passage for moving the sample inside the passage.
  33. 33
    The method according to Claim 31, wherein the communicating hole serves as a fluid entrance port for introducing a sample or a regent into the passage.
  34. 34
    The method according to Claim 31, wherein the blocker is formed of a thermoplastic resin containing an additive for increased absorption of the light thrown to the blocker.
  35. 35
    The method according to Claim 34, wherein the thermoplastic resin has a melting temperature not higher than 100°C.
  36. 36
    The method according to Claim 34, wherein the thermoplastic resin is provided by ethylene-vinyl acetate copolymer.
  37. 37
    The method according to Claim 34, wherein the blocker includes a filler for heat storage.
  38. 38
    The method according to Claim 31, wherein the blocker is formed as a sheet having a thickness of 5-100 µm.
  39. 39
    The method according to Claim 30, wherein the light is thrown to the target region by a laser diode.
  40. 40
    The method according to Claim 30, wherein the analyzing article is designed for optical analysis of the sample,    light for the analysis and the light thrown to the target region are supplied by a same light source.
Independent claims40